This paper describes the general architecture of a hybrid energy system, whose main components are a proton exchange membrane fuel cell, a battery pack and an ultracapacitor pack as power sources, and metal hydride canisters as energy storage devices, suitable for supplying power to small mobile non-automotive devices in a flexible and variable way. The first experimental results carried out on a system prototype are described, showing that the extra components, required in order to manage the hybrid system, do not remarkably affect the overall system efficiency, which is always higher than 36% in all the test configurations examined. in fact, the system allows the fuel cell to work most often at quasi-optimal conditions, near its maximum e...
ABSTRACT: The development of systems for production and storage of hydrogen as an energy vector for ...
A light electric vehicle (golf cart, 5 kW nominal motor power) was integrated with a commercial 1.2 ...
A fuel cell consumes hydrogen and oxygen to produce clean electric energy. The only byproducts are w...
This paper describes the general architecture of a hybrid energy system, whose main components are a...
This paper describes the general architecture of a hybrid energy system developed under the FEMAG (F...
The technology of metal hydride hydrogen-storage systems has already reached a mature stage and seve...
PEMFC powered Hybrid vehicle system is one of an interesting issue for the industry due to its high ...
This paper reviews state-of-the-art developments in hydrogen energy systems which integrate fuel cel...
© 2023 by the authors. Licensee MDPI, Basel, Switzerland. This is an open access article distributed...
International audienceHydrogen has been identified as one of the main axes of the energy transition....
The use of fuel cells (FC) in heavy duty utility vehicles, including material handling units / forkl...
This work presents the development and experimental evaluation of a Fuel Cell Hybrid Vehicle, focusi...
Hybridization with high specific energy-storage devices such as supercapacitors (SCs) has important ...
Solid oxide fuel cells (SOFC) have developed to a mature technology, able to achieve electrical effi...
Fuel cells are device capable to convert chemical energy into electrical energy. During the last dec...
ABSTRACT: The development of systems for production and storage of hydrogen as an energy vector for ...
A light electric vehicle (golf cart, 5 kW nominal motor power) was integrated with a commercial 1.2 ...
A fuel cell consumes hydrogen and oxygen to produce clean electric energy. The only byproducts are w...
This paper describes the general architecture of a hybrid energy system, whose main components are a...
This paper describes the general architecture of a hybrid energy system developed under the FEMAG (F...
The technology of metal hydride hydrogen-storage systems has already reached a mature stage and seve...
PEMFC powered Hybrid vehicle system is one of an interesting issue for the industry due to its high ...
This paper reviews state-of-the-art developments in hydrogen energy systems which integrate fuel cel...
© 2023 by the authors. Licensee MDPI, Basel, Switzerland. This is an open access article distributed...
International audienceHydrogen has been identified as one of the main axes of the energy transition....
The use of fuel cells (FC) in heavy duty utility vehicles, including material handling units / forkl...
This work presents the development and experimental evaluation of a Fuel Cell Hybrid Vehicle, focusi...
Hybridization with high specific energy-storage devices such as supercapacitors (SCs) has important ...
Solid oxide fuel cells (SOFC) have developed to a mature technology, able to achieve electrical effi...
Fuel cells are device capable to convert chemical energy into electrical energy. During the last dec...
ABSTRACT: The development of systems for production and storage of hydrogen as an energy vector for ...
A light electric vehicle (golf cart, 5 kW nominal motor power) was integrated with a commercial 1.2 ...
A fuel cell consumes hydrogen and oxygen to produce clean electric energy. The only byproducts are w...